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Through the looking glass: Applications of ground-penetrating radar in archaeology.

机译:透过窥视镜:探地雷达在考古学中的应用。

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The focus of this dissertation is to present the results of four years' worth of geophysical surveying at four major archaeological sites in Greece and the benefits to the archaeological community. The ground penetrating radar offers an inexpensive, non-destructive solution to the problem of deciding how much of a site is worth excavating and which areas would yield the most promising results. An introduction to the ground penetrating radar, or GPR, the equipment necessary to conduct a geophysical survey in the field, and the methods of data collection and subsequent data processing are all addressed. The benefits to the archeological community are many, and future excavations will incorporate such an important tool for a greater understanding of the site.; The history of GPR work in the archaeological field has grown at an astounding rate from its beginnings as a simple tool for petroleum and mining services in the beginning of the twentieth century. By mid-century, the GPR was first applied to archaeological sites rather than its common use by utility companies in locating pipes, cables, tunnels, and shafts. Although the preliminary surveys were little more than a search to locate buried walls, the success of these initial surveys paved the ground for future surveys at other archaeological sites, many testing the radar's efficacy with a myriad of soil conditions and properties.; The four sites in which geophysical surveys with a ground penetrating radar were conducted are Azorias on the island of Crete, Kolonna on the island of Aegina, Mochlos Island and Coastal Mochlos on the island of Crete, and Mycenae in the Peloponnese on mainland Greece. These case studies are first presented in terms of their geographical location, their mythology and etymology, where applicable, along with a brief history of excavation and occupation of the site. Additional survey methods were used at Mycenae, including aerial photography and ERDAS Imagine, a silo locating program now applied for "surface surveying." Each survey site is introduced via geographical location and proximity to known features, as well as with a comprehensive breakdown of the data into real-time depth, or depth-slices, for better identification of features.
机译:本文的重点是介绍在希腊的四个主要考古现场进行的四年地球物理勘测的结果以及对考古界的好处。探地雷达提供了一种廉价,无损的解决方案,可解决以下问题:确定值得挖掘的站点数量以及哪些区域将产生最有希望的结果。介绍了探地雷达或GPR,在现场进行地球物理勘测所需的设备以及数据收集和后续数据处理的方法。对考古界有很多好处,将来的发掘工作将包含这样一个重要的工具,以加深对遗址的了解。作为二十世纪初用于石油和采矿服务的简单工具,GPR在考古领域的工作历史以惊人的速度增长。到本世纪中叶,GPR首次应用于考古现场,而不是公用事业公司在定位管道,电缆,隧道和竖井时普遍使用的GPR。尽管初步调查仅是寻找定位埋墙的手段,但这些初步调查的成功为将来在其他考古现场进行调查打下了基础,其中许多是在无数土壤条件和特性下测试雷达的功效的;使用探地雷达进行地球物理勘测的四个地点分别是克里特岛上的Azorias,埃伊纳岛上的Kolonna,莫克洛斯岛和克里特岛上的沿海莫克洛斯,以及希腊大陆上伯罗奔尼撒的迈锡尼。首先根据地理位置,神话和词源(如适用)以及该地点的开挖和占领历史简要介绍这些案例研究。在迈锡尼,还使用了其他调查方法,包括航空摄影和ERDAS Imagine,ERDAS Imagine是一种现已应用于“地面调查”的筒仓定位程序。通过地理位置和与已知特征的邻近程度以及对数据的全面细分(实时细分或深度切片)将每个调查站点引入,以更好地识别特征。

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